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/* |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% % |
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% % |
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% % |
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% IIIIIIIIII PPPPPPPP LL % |
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% II PP PP LL % |
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% II PP PP LL % |
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% II PP PP LL % |
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% II PPPPPPPP LL % |
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% II PP LL % |
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% II PP LL % |
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% IIIIIIIIII PP LLLLLLLL % |
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% % |
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% % |
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% % |
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% Read/Write Scanalytics IPLab Image Format % |
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% Sean Burke % |
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% 2008.05.07 % |
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% v 0.9 % |
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% % |
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% Copyright 1999-2019 ImageMagick Studio LLC, a non-profit organization % |
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% dedicated to making software imaging solutions freely available. % |
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% % |
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% You may not use this file except in compliance with the License. You may % |
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% obtain a copy of the License at % |
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% % |
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% https://imagemagick.org/script/license.php % |
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% % |
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% Unless required by applicable law or agreed to in writing, software % |
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% distributed under the License is distributed on an "AS IS" BASIS, % |
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% WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. % |
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% See the License for the specific language governing permissions and % |
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% limitations under the License. % |
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% % |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% |
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% |
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*/ |
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/* |
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Include declarations. |
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*/ |
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#include "MagickCore/studio.h" |
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#include "MagickCore/blob.h" |
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#include "MagickCore/blob-private.h" |
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#include "MagickCore/cache.h" |
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#include "MagickCore/colorspace.h" |
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#include "MagickCore/colorspace-private.h" |
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#include "MagickCore/exception.h" |
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#include "MagickCore/exception-private.h" |
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#include "MagickCore/image.h" |
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#include "MagickCore/image-private.h" |
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#include "MagickCore/list.h" |
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#include "MagickCore/magick.h" |
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#include "MagickCore/memory_.h" |
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#include "MagickCore/monitor.h" |
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#include "MagickCore/monitor-private.h" |
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#include "MagickCore/option.h" |
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#include "MagickCore/property.h" |
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#include "MagickCore/quantum-private.h" |
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#include "MagickCore/static.h" |
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#include "MagickCore/string_.h" |
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#include "MagickCore/module.h" |
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/* |
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Tyedef declarations |
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*/ |
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typedef struct _IPLInfo |
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{ |
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unsigned int |
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tag, |
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size, |
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time, |
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z, |
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width, |
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height, |
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colors, |
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depth, |
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byteType; |
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} IPLInfo; |
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static MagickBooleanType |
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WriteIPLImage(const ImageInfo *,Image *,ExceptionInfo *); |
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/* |
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static void increase (void *pixel, int byteType){ |
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switch(byteType){ |
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case 0:(*((unsigned char *) pixel))++; break; |
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case 1:(*((signed int *) pixel))++; break; |
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case 2:(*((unsigned int *) pixel))++; break; |
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case 3:(*((signed long *) pixel))++; break; |
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default:(*((unsigned int *) pixel))++; break; |
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} |
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} |
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*/ |
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/* |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% % |
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% % |
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% % |
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% I s I P L % |
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% % |
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% % |
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% % |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% |
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% IsIPL() returns MagickTrue if the image format type, identified by the |
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% magick string, is IPL. |
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% |
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% The format of the IsIPL method is: |
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% |
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% MagickBooleanType IsIPL(const unsigned char *magick,const size_t length) |
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% |
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% A description of each parameter follows: |
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% |
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% o magick: compare image format pattern against these bytes. |
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% |
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% o length: Specifies the length of the magick string. |
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% |
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*/ |
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static MagickBooleanType IsIPL(const unsigned char *magick,const size_t length) |
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{ |
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if (length < 4) |
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return(MagickFalse); |
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if (LocaleNCompare((const char *) magick,"data",4) == 0) |
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return(MagickTrue); |
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return(MagickFalse); |
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} |
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/* |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% % |
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% % |
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% % |
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% R e a d I P L I m a g e % |
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% % |
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% % |
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% % |
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
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% |
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% ReadIPLImage() reads a Scanalytics IPLab image file and returns it. It |
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% allocates the memory necessary for the new Image structure and returns a |
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% pointer to the new image. |
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% |
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% According to the IPLab spec, the data is blocked out in five dimensions: |
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% { t, z, c, y, x }. When we return the image, the latter three are folded |
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% into the standard "Image" structure. The "scenes" (image_info->scene) |
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% correspond to the order: { {t0,z0}, {t0, z1}, ..., {t1,z0}, {t1,z1}... } |
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% The number of scenes is t*z. |
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% |
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% The format of the ReadIPLImage method is: |
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% |
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% Image *ReadIPLImage(const ImageInfo *image_info,ExceptionInfo *exception) |
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% |
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% A description of each parameter follows: |
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% |
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% o image_info: The image info. |
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% |
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% o exception: return any errors or warnings in this structure. |
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% |
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*/ |
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static void SetHeaderFromIPL(Image *image, IPLInfo *ipl){ |
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image->columns = ipl->width; |
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image->rows = ipl->height; |
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image->depth = ipl->depth; |
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image->resolution.x = 1; |
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image->resolution.y = 1; |
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} |
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static Image *ReadIPLImage(const ImageInfo *image_info,ExceptionInfo *exception) |
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{ |
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/* |
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Declare variables |
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*/ |
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Image *image; |
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MagickBooleanType status; |
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register Quantum *q; |
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unsigned char magick[12], *pixels; |
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ssize_t count; |
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ssize_t y; |
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size_t t_count=0; |
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size_t length; |
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IPLInfo |
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ipl_info; |
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QuantumFormatType |
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quantum_format; |
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QuantumInfo |
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*quantum_info; |
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QuantumType |
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quantum_type; |
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size_t |
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extent; |
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/* |
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Open Image |
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*/ |
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assert(image_info != (const ImageInfo *) NULL); |
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assert(image_info->signature == MagickCoreSignature); |
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if ( image_info->debug != MagickFalse) |
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(void) LogMagickEvent(TraceEvent, GetMagickModule(), "%s", |
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image_info->filename); |
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assert(exception != (ExceptionInfo *) NULL); |
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assert(exception->signature == MagickCoreSignature); |
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image=AcquireImage(image_info,exception); |
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status=OpenBlob(image_info,image,ReadBinaryBlobMode,exception); |
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if (status == MagickFalse) |
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{ |
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image=DestroyImageList(image); |
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return((Image *) NULL); |
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} |
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/* |
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Read IPL image |
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*/ |
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/* |
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Determine endianness |
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If we get back "iiii", we have LSB,"mmmm", MSB |
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*/ |
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count=ReadBlob(image,4,magick); |
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if (count != 4) |
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ThrowReaderException(CorruptImageError, "ImproperImageHeader"); |
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if((LocaleNCompare((char *) magick,"iiii",4) == 0)) |
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image->endian=LSBEndian; |
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else{ |
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if((LocaleNCompare((char *) magick,"mmmm",4) == 0)) |
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image->endian=MSBEndian; |
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else{ |
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ThrowReaderException(CorruptImageError, "ImproperImageHeader"); |
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} |
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} |
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/* Skip o'er the next 8 bytes (garbage) */ |
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count=ReadBlob(image, 8, magick); |
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/* |
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Excellent, now we read the header unimpeded. |
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*/ |
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count=ReadBlob(image,4,magick); |
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if((count != 4) || (LocaleNCompare((char *) magick,"data",4) != 0)) |
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ThrowReaderException(CorruptImageError, "ImproperImageHeader"); |
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ipl_info.size=ReadBlobLong(image); |
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ipl_info.width=ReadBlobLong(image); |
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ipl_info.height=ReadBlobLong(image); |
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if((ipl_info.width == 0UL) || (ipl_info.height == 0UL)) |
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ThrowReaderException(CorruptImageError,"ImproperImageHeader"); |
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|
ipl_info.colors=ReadBlobLong(image); |
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if(ipl_info.colors == 3){ SetImageColorspace(image,sRGBColorspace,exception);} |
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else { image->colorspace = GRAYColorspace; } |
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|
ipl_info.z=ReadBlobLong(image); |
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ipl_info.time=ReadBlobLong(image); |
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ipl_info.byteType=ReadBlobLong(image); |
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/* Initialize Quantum Info */ |
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switch (ipl_info.byteType) { |
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|
case 0: |
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ipl_info.depth=8; |
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|
quantum_format = UnsignedQuantumFormat; |
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|
break; |
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|
case 1: |
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|
ipl_info.depth=16; |
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|
quantum_format = SignedQuantumFormat; |
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|
break; |
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|
case 2: |
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|
ipl_info.depth=16; |
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|
quantum_format = UnsignedQuantumFormat; |
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|
break; |
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|
case 3: |
|
|
ipl_info.depth=32; |
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|
quantum_format = SignedQuantumFormat; |
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|
break; |
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|
case 4: ipl_info.depth=32; |
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|
quantum_format = FloatingPointQuantumFormat; |
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|
break; |
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|
case 5: |
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|
ipl_info.depth=8; |
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|
quantum_format = UnsignedQuantumFormat; |
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|
break; |
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|
case 6: |
|
|
ipl_info.depth=16; |
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|
quantum_format = UnsignedQuantumFormat; |
|
|
break; |
|
|
case 10: |
|
|
ipl_info.depth=64; |
|
|
quantum_format = FloatingPointQuantumFormat; |
|
|
break; |
|
|
default: |
|
|
ipl_info.depth=16; |
|
|
quantum_format = UnsignedQuantumFormat; |
|
|
break; |
|
|
} |
|
|
extent=ipl_info.width*ipl_info.height*ipl_info.z*ipl_info.depth/8; |
|
|
if (extent > GetBlobSize(image)) |
|
|
ThrowReaderException(CorruptImageError,"InsufficientImageDataInFile"); |
|
|
|
|
|
/* |
|
|
Set number of scenes of image |
|
|
*/ |
|
|
SetHeaderFromIPL(image, &ipl_info); |
|
|
|
|
|
/* Thats all we need if we are pinging. */ |
|
|
if (image_info->ping != MagickFalse) |
|
|
{ |
|
|
(void) CloseBlob(image); |
|
|
return(GetFirstImageInList(image)); |
|
|
} |
|
|
length=image->columns; |
|
|
quantum_type=GetQuantumType(image,exception); |
|
|
do |
|
|
{ |
|
|
SetHeaderFromIPL(image, &ipl_info); |
|
|
|
|
|
if ((image_info->ping != MagickFalse) && (image_info->number_scenes != 0)) |
|
|
if (image->scene >= (image_info->scene+image_info->number_scenes-1)) |
|
|
break; |
|
|
status=SetImageExtent(image,image->columns,image->rows,exception); |
|
|
if (status == MagickFalse) |
|
|
return(DestroyImageList(image)); |
|
|
/* |
|
|
printf("Length: %.20g, Memory size: %.20g\n", (double) length,(double) |
|
|
image->depth); |
|
|
*/ |
|
|
quantum_info=AcquireQuantumInfo(image_info,image); |
|
|
if (quantum_info == (QuantumInfo *) NULL) |
|
|
ThrowReaderException(ResourceLimitError,"MemoryAllocationFailed"); |
|
|
status=SetQuantumFormat(image,quantum_info,quantum_format); |
|
|
if (status == MagickFalse) |
|
|
ThrowReaderException(ResourceLimitError,"MemoryAllocationFailed"); |
|
|
pixels=(unsigned char *) GetQuantumPixels(quantum_info); |
|
|
if(image->columns != ipl_info.width){ |
|
|
/* |
|
|
printf("Columns not set correctly! Wanted: %.20g, got: %.20g\n", |
|
|
(double) ipl_info.width, (double) image->columns); |
|
|
*/ |
|
|
} |
|
|
|
|
|
/* |
|
|
Covert IPL binary to pixel packets |
|
|
*/ |
|
|
|
|
|
if(ipl_info.colors == 1){ |
|
|
for(y = 0; y < (ssize_t) image->rows; y++){ |
|
|
(void) ReadBlob(image, length*image->depth/8, pixels); |
|
|
q=QueueAuthenticPixels(image,0,y,image->columns,1,exception); |
|
|
if (q == (Quantum *) NULL) |
|
|
break; |
|
|
(void) ImportQuantumPixels(image,(CacheView *) NULL,quantum_info, |
|
|
GrayQuantum,pixels,exception); |
|
|
if (SyncAuthenticPixels(image,exception) == MagickFalse) |
|
|
break; |
|
|
} |
|
|
} |
|
|
else{ |
|
|
for(y = 0; y < (ssize_t) image->rows; y++){ |
|
|
(void) ReadBlob(image, length*image->depth/8, pixels); |
|
|
q=QueueAuthenticPixels(image,0,y,image->columns,1,exception); |
|
|
if (q == (Quantum *) NULL) |
|
|
break; |
|
|
(void) ImportQuantumPixels(image,(CacheView *) NULL,quantum_info, |
|
|
RedQuantum,pixels,exception); |
|
|
if (SyncAuthenticPixels(image,exception) == MagickFalse) |
|
|
break; |
|
|
} |
|
|
for(y = 0; y < (ssize_t) image->rows; y++){ |
|
|
(void) ReadBlob(image, length*image->depth/8, pixels); |
|
|
q=QueueAuthenticPixels(image,0,y,image->columns,1,exception); |
|
|
if (q == (Quantum *) NULL) |
|
|
break; |
|
|
(void) ImportQuantumPixels(image,(CacheView *) NULL,quantum_info, |
|
|
GreenQuantum,pixels,exception); |
|
|
if (SyncAuthenticPixels(image,exception) == MagickFalse) |
|
|
break; |
|
|
} |
|
|
for(y = 0; y < (ssize_t) image->rows; y++){ |
|
|
(void) ReadBlob(image, length*image->depth/8, pixels); |
|
|
q=QueueAuthenticPixels(image,0,y,image->columns,1,exception); |
|
|
if (q == (Quantum *) NULL) |
|
|
break; |
|
|
(void) ImportQuantumPixels(image,(CacheView *) NULL,quantum_info, |
|
|
BlueQuantum,pixels,exception); |
|
|
if (SyncAuthenticPixels(image,exception) == MagickFalse) |
|
|
break; |
|
|
} |
|
|
} |
|
|
SetQuantumImageType(image,quantum_type); |
|
|
|
|
|
t_count++; |
|
|
quantum_info = DestroyQuantumInfo(quantum_info); |
|
|
|
|
|
if (EOFBlob(image) != MagickFalse) |
|
|
{ |
|
|
ThrowFileException(exception,CorruptImageError,"UnexpectedEndOfFile", |
|
|
image->filename); |
|
|
break; |
|
|
} |
|
|
if (t_count < ipl_info.z * ipl_info.time) |
|
|
{ |
|
|
/* |
|
|
Proceed to next image. |
|
|
*/ |
|
|
AcquireNextImage(image_info,image,exception); |
|
|
if (GetNextImageInList(image) == (Image *) NULL) |
|
|
{ |
|
|
status=MagickFalse; |
|
|
break; |
|
|
} |
|
|
image=SyncNextImageInList(image); |
|
|
status=SetImageProgress(image,LoadImagesTag,TellBlob(image), |
|
|
GetBlobSize(image)); |
|
|
if (status == MagickFalse) |
|
|
break; |
|
|
} |
|
|
} while (t_count < ipl_info.z*ipl_info.time); |
|
|
CloseBlob(image); |
|
|
if (status == MagickFalse) |
|
|
return(DestroyImageList(image)); |
|
|
return(GetFirstImageInList(image)); |
|
|
} |
|
|
|
|
|
/* |
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
|
|
% % |
|
|
% % |
|
|
% % |
|
|
% R e g i s t e r I P L I m a g e % |
|
|
% % |
|
|
% % |
|
|
% % |
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
|
|
% |
|
|
% RegisterIPLImage() add attributes for the Scanalytics IPL image format to the |
|
|
% list of supported formats. |
|
|
% |
|
|
% |
|
|
*/ |
|
|
ModuleExport size_t RegisterIPLImage(void) |
|
|
{ |
|
|
MagickInfo |
|
|
*entry; |
|
|
|
|
|
entry=AcquireMagickInfo("IPL","IPL","IPL Image Sequence"); |
|
|
entry->decoder=(DecodeImageHandler *) ReadIPLImage; |
|
|
entry->encoder=(EncodeImageHandler *) WriteIPLImage; |
|
|
entry->magick=(IsImageFormatHandler *) IsIPL; |
|
|
entry->flags|=CoderDecoderSeekableStreamFlag; |
|
|
entry->flags|=CoderEndianSupportFlag; |
|
|
(void) RegisterMagickInfo(entry); |
|
|
return(MagickImageCoderSignature); |
|
|
} |
|
|
|
|
|
/* |
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
|
|
% % |
|
|
% % |
|
|
% % |
|
|
% U n r e g i s t e r I P L I m a g e % |
|
|
% % |
|
|
% % |
|
|
% % |
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
|
|
% |
|
|
% UnregisterIPLImage() removes format registrations made by the |
|
|
% IPL module from the list of supported formats. |
|
|
% |
|
|
% The format of the UnregisterIPLImage method is: |
|
|
% |
|
|
% UnregisterIPLImage(void) |
|
|
% |
|
|
*/ |
|
|
ModuleExport void UnregisterIPLImage(void) |
|
|
{ |
|
|
(void) UnregisterMagickInfo("IPL"); |
|
|
} |
|
|
|
|
|
/* |
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
|
|
% % |
|
|
% % |
|
|
% % |
|
|
% W r i t e I P L I m a g e % |
|
|
% % |
|
|
% % |
|
|
% % |
|
|
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% |
|
|
% |
|
|
% WriteIPLImage() writes an image to a file in Scanalytics IPLabimage format. |
|
|
% |
|
|
% The format of the WriteIPLImage method is: |
|
|
% |
|
|
% MagickBooleanType WriteIPLImage(const ImageInfo *image_info,Image *image) |
|
|
% Image *image,ExceptionInfo *exception) |
|
|
% |
|
|
% A description of each parameter follows. |
|
|
% |
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% o image_info: The image info. |
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% |
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% o image: The image. |
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% |
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% o exception: return any errors or warnings in this structure. |
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% |
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*/ |
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static MagickBooleanType WriteIPLImage(const ImageInfo *image_info,Image *image, |
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ExceptionInfo *exception) |
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{ |
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IPLInfo |
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ipl_info; |
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MagickBooleanType |
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status; |
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MagickOffsetType |
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scene; |
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register const Quantum |
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*p; |
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QuantumInfo |
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*quantum_info; |
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size_t |
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imageListLength; |
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ssize_t |
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y; |
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unsigned char |
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*pixels; |
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/* |
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Open output image file. |
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*/ |
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assert(image_info != (const ImageInfo *) NULL); |
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assert(image_info->signature == MagickCoreSignature); |
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assert(image != (Image *) NULL); |
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assert(image->signature == MagickCoreSignature); |
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if (image->debug != MagickFalse) |
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(void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename); |
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assert(exception != (ExceptionInfo *) NULL); |
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assert(exception->signature == MagickCoreSignature); |
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status=OpenBlob(image_info,image,WriteBinaryBlobMode,exception); |
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if (status == MagickFalse) |
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return(status); |
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scene=0; |
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quantum_info=AcquireQuantumInfo(image_info,image); |
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if (quantum_info == (QuantumInfo *) NULL) |
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ThrowWriterException(ResourceLimitError,"MemoryAllocationFailed"); |
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if ((quantum_info->format == UndefinedQuantumFormat) && |
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(IsHighDynamicRangeImage(image,exception) != MagickFalse)) |
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SetQuantumFormat(image,quantum_info,FloatingPointQuantumFormat); |
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switch(quantum_info->depth){ |
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case 8: |
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ipl_info.byteType = 0; |
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break; |
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case 16: |
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if(quantum_info->format == SignedQuantumFormat){ |
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ipl_info.byteType = 2; |
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} |
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else{ |
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ipl_info.byteType = 1; |
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} |
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break; |
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case 32: |
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if(quantum_info->format == FloatingPointQuantumFormat){ |
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ipl_info.byteType = 3; |
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} |
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else{ |
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ipl_info.byteType = 4; |
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} |
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break; |
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case 64: |
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ipl_info.byteType = 10; |
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break; |
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default: |
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ipl_info.byteType = 2; |
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break; |
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} |
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imageListLength=GetImageListLength(image); |
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ipl_info.z = (unsigned int) imageListLength; |
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/* There is no current method for detecting whether we have T or Z stacks */ |
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ipl_info.time = 1; |
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ipl_info.width = (unsigned int) image->columns; |
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ipl_info.height = (unsigned int) image->rows; |
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(void) TransformImageColorspace(image,sRGBColorspace,exception); |
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if(IssRGBCompatibleColorspace(image->colorspace) != MagickFalse) { ipl_info.colors = 3; } |
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else{ ipl_info.colors = 1; } |
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ipl_info.size = (unsigned int) (28 + |
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((image->depth)/8)*ipl_info.height*ipl_info.width*ipl_info.colors*ipl_info.z); |
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/* Ok! Calculations are done. Lets write this puppy down! */ |
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/* |
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Write IPL header. |
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*/ |
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/* Shockingly (maybe not if you have used IPLab), IPLab itself CANNOT read MSBEndian |
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files! The reader above can, but they cannot. For compatability reasons, I will leave |
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the code in here, but it is all but useless if you want to use IPLab. */ |
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if(image_info->endian == MSBEndian) |
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(void) WriteBlob(image, 4, (const unsigned char *) "mmmm"); |
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else{ |
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image->endian = LSBEndian; |
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(void) WriteBlob(image, 4, (const unsigned char *) "iiii"); |
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} |
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(void) WriteBlobLong(image, 4); |
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(void) WriteBlob(image, 4, (const unsigned char *) "100f"); |
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(void) WriteBlob(image, 4, (const unsigned char *) "data"); |
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(void) WriteBlobLong(image, ipl_info.size); |
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(void) WriteBlobLong(image, ipl_info.width); |
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(void) WriteBlobLong(image, ipl_info.height); |
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(void) WriteBlobLong(image, ipl_info.colors); |
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if(image_info->adjoin == MagickFalse) |
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(void) WriteBlobLong(image, 1); |
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else |
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(void) WriteBlobLong(image, ipl_info.z); |
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(void) WriteBlobLong(image, ipl_info.time); |
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(void) WriteBlobLong(image, ipl_info.byteType); |
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do |
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{ |
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/* |
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|
Convert MIFF to IPL raster pixels. |
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|
*/ |
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pixels=(unsigned char *) GetQuantumPixels(quantum_info); |
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if(ipl_info.colors == 1){ |
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/* Red frame */ |
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for(y = 0; y < (ssize_t) ipl_info.height; y++){ |
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p=GetVirtualPixels(image,0,y,image->columns,1,exception); |
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if (p == (const Quantum *) NULL) |
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break; |
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(void) ExportQuantumPixels(image,(CacheView *) NULL, quantum_info, |
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GrayQuantum, pixels,exception); |
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|
(void) WriteBlob(image, image->columns*image->depth/8, pixels); |
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} |
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} |
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if(ipl_info.colors == 3){ |
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/* Red frame */ |
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for(y = 0; y < (ssize_t) ipl_info.height; y++){ |
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p=GetVirtualPixels(image,0,y,image->columns,1,exception); |
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if (p == (const Quantum *) NULL) |
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break; |
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|
(void) ExportQuantumPixels(image,(CacheView *) NULL, quantum_info, |
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RedQuantum, pixels,exception); |
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|
(void) WriteBlob(image, image->columns*image->depth/8, pixels); |
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} |
|
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|
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/* Green frame */ |
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|
for(y = 0; y < (ssize_t) ipl_info.height; y++){ |
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|
p=GetVirtualPixels(image,0,y,image->columns,1,exception); |
|
|
if (p == (const Quantum *) NULL) |
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|
break; |
|
|
(void) ExportQuantumPixels(image,(CacheView *) NULL, quantum_info, |
|
|
GreenQuantum, pixels,exception); |
|
|
(void) WriteBlob(image, image->columns*image->depth/8, pixels); |
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|
} |
|
|
/* Blue frame */ |
|
|
for(y = 0; y < (ssize_t) ipl_info.height; y++){ |
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|
p=GetVirtualPixels(image,0,y,image->columns,1,exception); |
|
|
if (p == (const Quantum *) NULL) |
|
|
break; |
|
|
(void) ExportQuantumPixels(image,(CacheView *) NULL, quantum_info, |
|
|
BlueQuantum, pixels,exception); |
|
|
(void) WriteBlob(image, image->columns*image->depth/8, pixels); |
|
|
if (image->previous == (Image *) NULL) |
|
|
{ |
|
|
status=SetImageProgress(image,SaveImageTag,(MagickOffsetType) y, |
|
|
image->rows); |
|
|
if (status == MagickFalse) |
|
|
break; |
|
|
} |
|
|
} |
|
|
} |
|
|
quantum_info=DestroyQuantumInfo(quantum_info); |
|
|
if (GetNextImageInList(image) == (Image *) NULL) |
|
|
break; |
|
|
image=SyncNextImageInList(image); |
|
|
status=SetImageProgress(image,SaveImagesTag,scene++,imageListLength); |
|
|
if (status == MagickFalse) |
|
|
break; |
|
|
}while (image_info->adjoin != MagickFalse); |
|
|
|
|
|
(void) WriteBlob(image, 4, (const unsigned char *) "fini"); |
|
|
(void) WriteBlobLong(image, 0); |
|
|
|
|
|
CloseBlob(image); |
|
|
return(MagickTrue); |
|
|
}
|
|
|
|